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Characterization and Modeling of a Highly-Oriented Thin Film for Composite Forming

机译:复合成形高度取向薄膜的表征与建模

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Ultra High Molecular Weight Polyethylene (UHMWPE) materials exhibit high impact strength, excellent abrasion resistance and high chemical resistance, making them attractive for a number of impact applications for automotive, marine and medical industries. One format of this class of materials that is being considered for the thermoforming process is a highly-oriented extruded thin film. Parts are made using a two-step manufacturing process that involves first producing a set of preforms and then consolidating these preforms into a final shaped part. To assist in the design of the processing parameters, simulations of the preforming and compression molding steps can be completed using the finite element method. Such simulations require material input data as developed through a comprehensive characterization test program, e.g. shear, tensile and bending, over the range of potential processing temperatures. The current research investigates the challenges associated with the characterization of thin, highly-oriented UHMWPE films. Variations in grip type, sample size and testing rates are explored to achieve convergence of the characterization data. Material characterization results are then used in finite element simulations of the tension test to explore element formulations that work well with the mechanical behavior. Comparisons of the results from the material characterization tests to results of simulations of the same test are performed to validate the finite element method parameters and the credibility of the user-defined material model.
机译:超高分子量聚乙烯(UHMWPE)材料表现出高冲击强度,优异的耐磨性和高耐化学性,使它们对汽车,海洋和医疗行业的许多冲击应用具有吸引力。考虑热成型过程的这种材料的一种形式是一种高度取向的挤出薄膜。零件是使用两步制造工艺制造的,其涉及首先制造一组预制件,然后将这些预成型件固化成最终形状部分。为了帮助设计处理参数,可以使用有限元方法完成预成型和压缩模塑步骤的模拟。这种模拟需要通过全面表征测试程序开发的材料输入数据,例如,在潜在的加工温度范围内剪切,拉伸和弯曲。目前的研究调查了与薄高度导向的UHMWPE薄膜表征相关的挑战。探讨了握把类型,样本大小和测试速率的变化,以实现表征数据的融合。然后在张力试验的有限元模拟中使用材料表征结果,以探索与机械行为好的元件配方。执行来自材料表征测试的结果的比较,以进行相同测试的模拟结果以验证有限元方法参数和用户定义的材料模型的可信度。

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